Key result
Increasing pneumatic cuff pressure significantly increased electrodermal activity parameters and the decrease in tissue oxygen saturation, indicating higher discomfort.
Why the study?
Quantification of comfort in binding parts of rehabilitation robots is necessary to reduce physical strain on users, motivating investigation of their physiological impacts.
Do different cuff pressures affect electrodermal activity and tissue oxygen saturation in healthy subjects?
Do different cuff pressures affect electrodermal activity and tissue oxygen saturation in healthy subjects?
Decreases in tissue oxygen saturation and mean skin conductance level are effective indicators of discomfort from pneumatic cuff pressure, which may aid in assessing comfort for rehabilitation robots.
Higher cuff pressures may increase discomfort; Level 5 evidence leaves optimal sensor settings open.
The quantification of comfort in binding parts, essential human–machine interfaces (HMI) for the functioning of rehabilitation robots, is necessary to reduce physical strain on the user despite great achievements in their structure and control. This study aims to investigate the physiological impacts of binding parts by measuring electrodermal activity (EDA) and tissue oxygen saturation (StO2). In Experiment 1, EDA was measured from 13 healthy subjects under three different pressure conditions (10, 20, and 30 kPa) for 1 min using a pneumatic cuff on the right thigh. In Experiment 2, EDA and StO2 were measured from 10 healthy subjects for 5 min. To analyze the correlation between EDA parameters and the decrease in StO2, a survey using the visual analog scale (VAS) was conducted to assess the level of discomfort at each pressure. The EDA signal was decomposed into phasic and tonic components, and the EDA parameters were extracted from these two components. RM ANOVA and a post hoc paired t-test were used to determine significant differences in parameters as the pressure increased. The results showed that EDA parameters and the decrease in StO2 significantly increased with the pressure increase. Among the extracted parameters, the decrease in StO2 and the mean SCL proved to be effective indicators. Such analysis outcomes would be highly beneficial for studies focusing on the comfort assessment of the binding parts of rehabilitation robots.
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Kim et al. (2024) studied Healthy (n=23). Pneumatic cuff pressure was evaluated on Electrodermal activity (EDA) parameters and tissue oxygen saturation (StO2). Increasing pneumatic cuff pressure significantly increased electrodermal activity parameters and the decrease in tissue oxygen saturation, indicating higher discomfort.
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